期刊文献+

不同光质对萝卜芽苗菜生长和营养品质的影响 被引量:83

Effects of Different Spectra on Growth and Nutritious Quality of Radish Sprouting Seedlings
在线阅读 下载PDF
导出
摘要 以荧光灯为对照,采用LED调制光质和光量,研究不同光质对萝卜芽苗菜生长和营养品质的影响。结果表明,红光处理对萝卜芽苗菜生长影响显著,下胚轴长、子叶面积、植株鲜质量及干质量均达到最大值,且显著高于对照。红光与红蓝光组合处理下,可溶性糖与淀粉含量均显著高于对照。综合考虑认为应用红光照射有利于萝卜芽苗菜生长,提高产量,改善部分营养品质。 Effects of different spectra of light emitting diode (LED) on growth of radish sprouting seedlings were studied. Light generated from LED and fluorescent lights were used as the control. From the experimental results, red LED was the most effective for the growth of radish sprouting seedlings, and exhibited the highest hypocotyl length, cotyledon area, fresh weight and dry weight. Red LED, combination of red and blue LED significantly increased the contents of soluble sugar and starch. The results suggested that application of red LED could accelerate the growth of radish sprouting seedlings, increase yield and improve partial nutrient quality.
出处 《中国蔬菜》 北大核心 2009年第10期28-32,共5页 China Vegetables
基金 国家自然科学基金(30800764) 国家"863"计划(2006AA03A165)
关键词 光质 发光二极管 萝卜 芽苗菜 生长 品质 Spectra Light emitting diode Radish Sprouting seedlings Growth Quality
作者简介 张欢,硕士研究生,专业方向:植物发育生物学,E-mail:2007116026@njau.edu.cn 通讯作者(Corresponding author):崔瑾,博士,副教授,硕士生导师,专业方向:植物发育生物学及农业环境生物学E-mail:cuijin@njau.edu.cn
  • 相关文献

参考文献16

  • 1Clouse S D.Integration of light and brassinosteroid signals in etiolated seedling growth[J].Trends in Plant Science,2001,6:443-445.
  • 2Noémi E,Csengele B,va H,Béla B.Light-induced wilting and its molecular mechanism in epicotyls of dark-germinated pea(Pisum sativum L.)seedlings[J].Plant Cell Physiology,2005,46:185-191.
  • 3Briggs W R,Beck C F,Cashmore A R,Christie J M,Hughes J,Jarillo J A,Kagawa T,Kanegae H,Liscum E,Nagatani A,Okada K,Salomon M,Rüdiger W,Sakai T,Takano M,Wada M,Watson J C.The phototropin family of photoreceptors[J].Plant Cell,2001,13:993-997.
  • 4Briggs W R,Olney M A.Photoreceptors in plant photomorphogenesis to date,five photochromes,two cryptochrome,one phototropin and one superchrome[J].Plant Physiology,2001,125:85-88.
  • 5Kevin W.'Photo-Manipulation-Boxes';an instrument for the study of plant photobiology[J].Plant Photobiology,2000,26:3-15.
  • 6Okamoto K,Yanagi T,Kondo S.Growth and morphogenesis of lettuce seedlings raised under different combinations of red and blue light[J].Acta Horticulturae,1997,435:149-157.
  • 7Schuerger A C,Brown C S,Stryjewski E C.Anatomical features of pepper plants(Capsium annuum L.)grown under red light-emitting diodes supplemented with blue or far-red light[J].Annals of Botany,1997,79:273-282.
  • 8Yorio N C,Goins G D,Kagie H R,Wheeler R M,Sager J C.Improving spinach,radish,and lettuce growth under red light-emitting diodes(LEDs)with blue light supplementation[J].HortScience,2001,36(2):380-383.
  • 9Wang Ch Y,Fu Ch Ch,Liu Y Ch.Effects of using light-emitting diodes on the cultivation of Spirulina platensis[J].Biochemical Engineering Journal,2007,37:21-25.
  • 10Heo J,Lee C,Chakrabarty D,Paek K.Growth responses of marigold and salvia bedding plants as affected by monochromic or mixture radiation provided by a light-emitting diode(LED)[J].Plant Growth Regul,2002,38:225-230.

二级参考文献30

共引文献456

同被引文献1070

引证文献83

二级引证文献923

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部